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PHEVs contribution to the self-healing process of distribution systems

机译:PHEV对配电系统自我修复过程的贡献

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Traditionally, distribution system takes a long time to recover after a major outage, due to its top-down operation strategy. As fast response energy resources, Plug-in Hybrid Electric Vehicles (PHEVs) can accelerate the load pickup process by compensating the imbalance between available generation and load in distribution system. In this paper, PHEVs are employed for reliable load pickup and faster self-healing process. The non-homogeneous Markov chain method has been employed for generation of synthetic driving behavior. The optimization problem of finding load pickup sequence to maximize restored energy is formulated as a Mixed Integer Linear Programming (MILP) problem. Simulation results on a 100-feeder test system demonstrate the benefit from PHEVs to restore more energy in a given recovery time. It also provides incentives to deploy a large amount of PHEVs to improve system resiliency.
机译:传统上,由于自上而下的操作策略,配电系统在大故障后需要很长时间才能恢复。作为快速响应的能源,插电式混合动力汽车(PHEV)可以通过补偿配电系统中可用发电量与负荷之间的不平衡来加速负荷提取过程。在本文中,PHEV用于可靠的负载提取和更快的自愈过程。非均质马尔可夫链方法已用于生成综合驾驶行为。查找负载拾取序列以最大程度地恢复能量的优化问题被公式化为混合整数线性规划(MILP)问题。 100馈线测试系统上的仿真结果证明了PHEV在给定的恢复时间内可以恢复更多能量的好处。它还鼓励部署大量的PHEV,以提高系统的弹性。

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